Chapter 4: Q5. (page 155)
Complete.
If is on the perpendicular bisector of , then is equidistant from and . Thus .

Short Answer
If is on the perpendicular bisector of , thenis equidistant from and . Thus,width="68" height="24" role="math">
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Chapter 4: Q5. (page 155)
Complete.
If is on the perpendicular bisector of , then is equidistant from and . Thus .

If is on the perpendicular bisector of , thenis equidistant from and . Thus,width="68" height="24" role="math">
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Plot the given points on graph paper. Draw and . Copy and complete the statement .
Explain how you would prove the following. Given that. Prove that.
For the following figure, can the triangle be proved congruent? If so, what postulate can be used?

For the following figure, can the triangle be proved congruent. If so, what postulate can be used?

For the following figure, can the triangle be proved congruent. If so, what postulate can be used?

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